Wang Y, Zhou Z, Leylek T, Tan H, Sun Y, Parkinson F E, Wang J-F
Kleysen Institute for Advanced Medicine, Health Sciences Centre, Winnipeg, Canada; Department of Pharmacology and Therapeutics, University of Manitoba, Winnipeg, Canada.
Kleysen Institute for Advanced Medicine, Health Sciences Centre, Winnipeg, Canada; Department of Pharmacology and Therapeutics, University of Manitoba, Winnipeg, Canada; Department of Psychiatry, University of Manitoba, Winnipeg, Canada.
Neuroscience. 2015 Dec 17;311:374-81. doi: 10.1016/j.neuroscience.2015.10.052. Epub 2015 Nov 2.
Previous studies have shown that nitric oxide can induce cysteine S-nitrosylation of total protein in synaptosomes, suggesting that nitric oxide may contribute to the regulation of synaptic protein function. Vesicular neurotransmitter transporters pack neurotransmitters into synaptic vesicles and play an important role in neurotransmission. In the central nervous system, vesicular monoamine transporter 2 (VMAT2) is responsible for the uptake of monoamines, vesicular acetylcholine transporter (VAChT) is responsible for the uptake of acetylcholine, while vesicular glutamate transporters 1 and 2 (VGLUT1 and VGLUT2) are responsible for the uptake of glutamate. The purpose of this study was to investigate the role of cysteine S-nitrosylation in the regulation of these vesicular neurotransmitter transporters. Using the biotin switch assay followed by avidin precipitation and immunoblotting we found that the nitric oxide donor nitrosoglutathione (GSNO) not only increased total cysteine S-nitrosylation, but also increased cysteine S-nitrosylation of VMAT2, VAChT, VGLUT1 and VGLUT2 in the mouse brain. Further, GSNO also decreased the vesicular uptake of [(3)H]dopamine, [(3)H]acetylcholine and [(3)H]glutamate. Our studies suggest that the cysteine S-nitrosylation may play an important role in the regulation of vesicular neurotransmitter transport.
先前的研究表明,一氧化氮可诱导突触体中总蛋白的半胱氨酸S-亚硝基化,这表明一氧化氮可能参与突触蛋白功能的调节。囊泡神经递质转运体将神经递质包装到突触小泡中,在神经传递中起重要作用。在中枢神经系统中,囊泡单胺转运体2(VMAT2)负责单胺的摄取,囊泡乙酰胆碱转运体(VAChT)负责乙酰胆碱的摄取,而囊泡谷氨酸转运体1和2(VGLUT1和VGLUT2)负责谷氨酸的摄取。本研究的目的是探讨半胱氨酸S-亚硝基化在这些囊泡神经递质转运体调节中的作用。通过生物素转换法,随后进行抗生物素蛋白沉淀和免疫印迹,我们发现一氧化氮供体亚硝基谷胱甘肽(GSNO)不仅增加了总半胱氨酸S-亚硝基化,还增加了小鼠脑中VMAT2、VAChT、VGLUT1和VGLUT2的半胱氨酸S-亚硝基化。此外,GSNO还降低了[³H]多巴胺、[³H]乙酰胆碱和[³H]谷氨酸的囊泡摄取。我们的研究表明,半胱氨酸S-亚硝基化可能在囊泡神经递质转运的调节中起重要作用。